We analyze the emergence of correlated optical phenomena in the transmission of light through a waveguide that confines classical or ultracold quantum degenerate atomic ensembles. The conditions of the correlated collective response are identified in terms of atom density, thermal broadening, and photon losses by using stochastic Monte Carlo simulations and transfer matrix methods of transport theory. We also calculate the “cooperative Lamb shift” for the waveguide transmission resonance, and discuss line shifts that are specific to effectively one-dimensional waveguide systems
We study theoretically a laser-driven one-dimensional chain of atoms interfaced with the guided opti...
Waveguide circuit quantum electrodynamics (waveguide circuit QED) studies light-matter interaction w...
Light transport in a disordered ensemble of resonant atoms placed in a waveguide is found to be very...
We analyze the emergence of correlated optical phenomena in the transmission of light through a wave...
We study the cooperative optical coupling between regularly spaced atoms in a one-dimensional wavegu...
We theoretically investigate the transport properties of a weak coherent input field scattered by an...
We theoretically investigate the transport properties of a weak coherent input field scattered by an...
We study the collective effects that emerge in waveguide quantum electrodynamics where several (arti...
We study the dynamics of a single excitation coherently shared amongst an ensemble of atoms and coup...
We study the cooperative optical coupling between regularly spaced atoms in a one-dimensional wavegu...
Based on a formalism that describes atom-light interactions in terms of the classical electromagneti...
We study the collective optical response of an atomic ensemble confined within a single-mode optical...
We study the optical properties of an ensemble of two-level atoms coupled to a 1D photonic crystal w...
Based on a formalism that describes atom-light interactions in terms of the classical electromagneti...
Waveguide quantum electrodynamics studies photon-mediated interactions of quantum emitters in a one-...
We study theoretically a laser-driven one-dimensional chain of atoms interfaced with the guided opti...
Waveguide circuit quantum electrodynamics (waveguide circuit QED) studies light-matter interaction w...
Light transport in a disordered ensemble of resonant atoms placed in a waveguide is found to be very...
We analyze the emergence of correlated optical phenomena in the transmission of light through a wave...
We study the cooperative optical coupling between regularly spaced atoms in a one-dimensional wavegu...
We theoretically investigate the transport properties of a weak coherent input field scattered by an...
We theoretically investigate the transport properties of a weak coherent input field scattered by an...
We study the collective effects that emerge in waveguide quantum electrodynamics where several (arti...
We study the dynamics of a single excitation coherently shared amongst an ensemble of atoms and coup...
We study the cooperative optical coupling between regularly spaced atoms in a one-dimensional wavegu...
Based on a formalism that describes atom-light interactions in terms of the classical electromagneti...
We study the collective optical response of an atomic ensemble confined within a single-mode optical...
We study the optical properties of an ensemble of two-level atoms coupled to a 1D photonic crystal w...
Based on a formalism that describes atom-light interactions in terms of the classical electromagneti...
Waveguide quantum electrodynamics studies photon-mediated interactions of quantum emitters in a one-...
We study theoretically a laser-driven one-dimensional chain of atoms interfaced with the guided opti...
Waveguide circuit quantum electrodynamics (waveguide circuit QED) studies light-matter interaction w...
Light transport in a disordered ensemble of resonant atoms placed in a waveguide is found to be very...